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71.
We studied the effects of TNF-α or GM-CSF on the production of reactive oxygen species (as measured by chemiluminescence) and degranulation responses of neutrophils to opsonized inflammatory microcrystals. TNF-α in the 10–2000 pm or GM-CSF in the 2–200 pm concentration range caused the concentration-dependent amplification of neutrophil chemiluminescence responses to both calcium pyrophosphate dihydrate (CPPD) and monosodium urate monohydrate (MSUM) crystals. Degranulation responses, as measured by the extracellular release of the granule enzymes myeloperoxidase or lysozyme, were amplified by ≈ 50–100% for both MSUM or CPPD crystal-induced neutrophil activation when cells were pretreated with TNF-α at 2000 pm or GM-CSF at 75 pm.  相似文献   
72.
Caffeine actions on currents induced by calcium-overload in Purkinje fibers   总被引:2,自引:0,他引:2  
The ionic events underlying the changes induced by caffeine in calcium-overloaded Purkinje fibers were studied by means of a voltage-clamp technique. The following results were obtained. In fibers exposed to strophanthidin (5 X 10(-7) M), a depolarizing clamp of suitable magnitude or duration is followed by an oscillatory current (Ios) often superimposed on a decaying inward tail current (the "tail current"). Caffeine (9 mM) abolishes Ios and increases the tail current. Caffeine has similar actions when calcium overload is induced by increasing [Ca]0 or decreasing [Na]0. The magnitude of the tail current is reduced by decreasing [Ca]0. The tail current appears with repolarizations to -40 mV or more negative values as Ios appears in the absence of caffeine. As with Ios the tail current can be triggered twice (during and after a test clamp of suitable characteristics), becomes more inward with repeated clamps and becomes larger with larger or longer conditioning clamps. During the recovery from caffeine exposure, the tail current decreases gradually as Ios returns progressively. It is concluded that both Ios and tail current are caused by calcium overload but are affected in opposite direction by caffeine, apparently because caffeine decreases the calcium overload in the sarcoplasmic reticulum (abolition of Ios) and increases the calcium to be extruded from the sarcoplasm (increase in the tail current).  相似文献   
73.
74.
Protein kinase C is an important second messenger system, which is translocated from the cytosol to the cell membrane upon cell stimulation. We used confocal microscopy to study the spatial distribution of protein kinase C isoforms after stimulation of cultured vascular smooth muscle cells with different agonists. First, we analysed the effects of angiotensin II and platelet-derived growth factor (PDGF). Confocal microscopy showed a rapid assembly of PKC α along cytosolic fibres followed by a translocation towards the nucleus with angiotensin II. PDGF engendered a similar, but much slower response; however, a cytoskeletal distribution was not observed. We then investigated the effects of thrombin and bFGF on nuclear translocation. bFGF induced a rapid translocation of the isoform towards the perinuclear region and into the nucleus. bFGF had a similar effect on PKC ?. In contrast, thrombin had a smaller effect on nuclear translocation of PKC α and did not influence PKC ?, but instead induced a rapid nuclear translocation of PKC ζ. Thus, tyrosine kinase receptor activation via bFGF induces a rapid association of PKC α and ? within nuclear structures. Our results show that agonists cause, not only a translocation of protein kinase C isoforms into the cell membrane but also into the cell nucleus. Lastly, we analyzed the nuclear immunoreactivity of the PKC isoforms α, δ,? and ζ in vascular smooth muscle cells during the cell cycle. Resting cells were stimulated with foetal calf serum (FCS, 10%), which translocated PKC α and ? to the perinuclear region and into the nucleus, while PKC δ and ζ showed no increase in nuclear immunoreactivity. After 4 h of FCS, the nuclear immunoreactivity for PKC α and ? was reduced to or below control values. At 8 h, increased nuclear expression of isoforms α,? and ζ was observed, while isoform δ was not affected. Our results demonstrate a complex spatial and temporal regulation of PKC isoforms in response to vasoactive hormones and growth factors. We suggest that protein kinase C may be important for nuclear signaling and demonstrate that nuclear translocation of PKC isoforms is differentially regulated during the cell cycle.  相似文献   
75.
The effect of calcium-balanced heparin (471896, CIBA CORNING) on blood gas and electrolyte analysis was evaluated, by comparing with that of sodium heparin (Na heparin). One ml of whole blood was collected into a syringe, which contained calcium-balance heparin (Ca balanced heparin) or Na heparin. 122 pairs of blood samples obtained from 15 patients were analyzed for Na, K, ionized calcium (Ca(++)), total hemoglobin, pH, P(CO)(2), and P(O)(2) by an automatic blood gas and electrolyte analyzer, CIBA CORNING model 288. There was a significant difference ( P < 0.05) in pH, P(CO)(2), Na, and Ca(++) between the two different groups. Ca(++) concentration was significantly less in Na heparin group than in Ca balanced heparin group, probably due to more chelation of Ca(++) by Na heparin than Ca balanced heparin. The present study suggests that the Ca balanced heparin has minimal effect on the blood gas and electrolyte analysis, and is a suitable anticoagulant for the Ca(++) measurement.  相似文献   
76.
实验证实羟苯磺酸钙能显著性降低兔血小板聚集比率、血小板粘附性、血浆与血清粘度。能增强微循环、使高分子右旋糖酐造成兔眼结膜微循环障碍的血液流态得到充分的改善。  相似文献   
77.
目的:探讨中药胆必清对内毒素诱导的大鼠腹腔巨噬细胞游离钙浓度的影响。方法:制备大鼠腹腔巨噬细胞并在体外进行孵育,使用荧光探针用荧光法测定钙浓度。巨噬细胞随机分为正常对照组,内毒素LPS组,小、中和大剂量中药组。结果:LPS能诱导巨噬细胞[Ca2^ ]i的升高。加入胆必清后,[Ca2^ ]i可有不同程度的降低。结论:胆必清能抑制LPS诱导的大鼠腹腔巨噬细胞内的[Ca2^ ]i升高,提示该药具有抗炎和免疫调节作用。  相似文献   
78.
  1. Modulation of presynaptic voltage-dependent calcium channels (VDCCs) by muscarinic receptors at the CA3–CA1 synapse of rat hippocampal slices was investigated by using the calcium indicator fura-2. Stimulation-evoked presynaptic calcium transients ([Capre]t) and field excitatory postsynaptic potentials (fe.p.s.ps) were simultaneously recorded. The relationship between presynaptic calcium influx and synaptic transmission was studied.
  2. Activation of muscarinic receptors inhibited [Capre]t, thereby reducing synaptic transmission. Carbachol (CCh, 10 μM) inhibited [Capre]t by 35% and reduced fe.p.s.p. by 85%. The inhibition was completely antagonized by 1 μM atropine. An approximate 4th power relationship was found between presynaptic calcium influx and postsynaptic responses.
  3. Application of the N-type VDCC-blocking peptide toxin ω-conotoxin GVIA (ω-CTx GVIA, 1 μM) inhibited [Capre]t and fe.p.s.ps by 21% and 49%, respectively, while the P/Q-type VDCC blocker ω-agatoxin IVA (ω-Aga IVA, 1 μM) reduced [Capre]t and fe.p.s.ps by 35% and 85%, respectively.
  4. Muscarinic receptor activation differentially inhibited distinct presynaptic VDCCs. ω-CTx GVIA-sensitive calcium channels were inhibited by muscarinic receptors, while ω-Aga IVA-sensitive channels were not. The percentage inhibition of ω-CTx GVIA-sensitive [Capre]t was about 63%.
  5. Muscarinic receptors inhibited presynaptic VDCCs in a way similar to adenosine (Ad) receptors. The percentage inhibition of ω-CTx GVIA-sensitive [Capre]t by Ad (100 μM) was about 59%. There was no significant inhibition of ω-Aga IVA-sensitive channels by Ad. The inhibitions of [Capre]t by CCh and Ad were mutually occlusive.
  6. These results indicate that inhibition of synaptic transmission by muscarinic receptors is mainly the consequence of a reduction of the [Capre]t due to inhibition of presynaptic VDCCs.
  相似文献   
79.
The effects of the phenylalkylamines verapamil, gallopamil, and devapamil on L-type calcium currents (ICa) were studied in ventricular myocytes from rat hearts using the whole-cell patch-clamp technique. In particular, the question was addressed, whether the pharmacological binding sites for these drugs were located at the inner and/or at the outer surface of the cell membrane. Therefore, tertiary verapamil, gallopamil, and devapamil and their corresponding quaternary derivatives were applied either from the outside or the inside of the cell membrane. Extracellular application of verapamil, gallopamil and devapamil (each at 3 M) reduced Ica to 16.1 ±8.6%, 11 ± 8.9 %, and 9.3 ± 6 % of control, respectively. Intracellular application of the same substances, via the patch pipette filled with 30 M of either verapamil, gallopamil, or devapamil, failed to depress ICa. The quaternary derivatives of the phenylalkylamines (30 M) were ineffective both when applied extracellularly or intracellularly. It is suggested that phenylalkylamines block ICa in ventricular myocytes by acting on a binding site of the calcium channel molecule located at the outer surface of the cell membrane.  相似文献   
80.
Intracellular free Ca2+ concentration ([Ca2+]i) was monitored using the fluorescence from the dye Fura-2-AM in single myometrial cells from pregnant rats. Oxytocin and acetylcholine applied to the cell evoked an initial peak in [Ca2+]i followed by a smaller sustained rise which was rapidly terminated upon removal of acetylcholine or persisted after oxytocin removal. A Ca2+ channel blocker (oxodipine) and external Ca2+ removal decreased both the transient and sustained rises in [Ca2+]i suggesting that Ca2+ influx through L-type Ca2+ channels participated in the global Ca2+ response induced by oxytocin. However, the initial peak in [Ca2+]i produced by oxytocin was mainly due to Ca2+ store release: it was abolished by inclusion of heparin [which blocks inositol 1,4,5-trisphosphate (InsP 3) receptors] in the pipette (whole-cell recording mode of patch-clamp) and external application of thapsigargin (which blocks sarcoplasmic reticulum Ca2+-ATPases). In contrast, the transient Ca2+ response induced by oxytocin was unaffected by ryanodine. Moreover, caffeine failed to induce a rise in [Ca2+]i but reduced the oxytocin-induced transient Ca2+ response. The later sustained rise in [Ca2+]i produced by oxytocin was due to the entry of Ca2+ into the cell as it was suppressed in external Ca2+-free solution. The Ca2+ entry pathway is permeable to Mn2+ ions, in contrast to that described in various vascular and visceral smooth muscle cells. Oxytocin-induced Ca2+ release is blocked by the oxytocin antagonist d(CH2)5[Tyr(Me)2,Thr4,Tyr-NH 2 9 ]OVT. The prolonged increase in [Ca2+]i after oxytocin removal is rapidly terminated by addition of the oxytocin antagonist suggesting that oxytocin dissociation from its receptor is very slow. The oxytocin stimulation of [Ca2+]i was insensitive to incubation with pertussis toxin, and blocked by a pipette solution containing anti-q/11 antibody. These data show that myometrial cells possess an unique heparin-sensitive and thapsigargin-sensitive store that can be mobilized by activation of oxytocin receptors which couples with a Gq/G11-protein to activate phospholipase C.  相似文献   
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